首页> 外文会议>2011 IEEE International Symposium on Antennas and Propagation (APSURSI) >Feasibility of non-invasive blood glucose monitoring: In-vitro measurements and phantom models
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Feasibility of non-invasive blood glucose monitoring: In-vitro measurements and phantom models

机译:无创血糖监测的可行性:体外测量和体模模型

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The objective of the present work is to demonstrate the feasibility of non-invasively monitoring blood glucose levels. The technique is based on relating a monitoring antenna's resonant frequency to the permittivity and conductivity of blood which in turn is related to the glucose levels. At first a realistic data base for the dielectric properties of blood was established through in-vitro measurements performed on blood samples obtained from 10 patients with glucose levels ranging from normal (87 mg/dl) to hyperglycemic (330 mg/dl). Using the Agilent 85070E dielectric probe and an Agilent 8720B network analyzer the dielectric permittivity and conductivity of the blood samples were measured over a frequency range of 1GHz – 10GHz. The resonant frequency of a wideband antenna strapped to the patient was monitored as the patient ingested fast acting glucose tablets. It has been noted that the antenna resonant frequency increases as the glucose level increases. Blood phantom models have been built to replicate in-vitro measurements and the shift in the resonant frequency has been demonstrated. The work in progress is the development of an analytical model to relate the antenna response to the glucose level.
机译:本工作的目的是证明无创监测血糖水平的可行性。该技术基于将监视天线的谐振频率与血液的介电常数和电导率相关,而介电常数和电导率又与葡萄糖水平有关。首先,通过对从10位血糖水平从正常(87 mg / dl)到高血糖(330 mg / dl)的患者的血液样本进行体外测量,建立了现实的血液介电数据库。使用Agilent 85070E介电探针和Agilent 8720B网络分析仪,可以在1GHz至10GHz的频率范围内测量血液样本的介电常数和电导率。当患者摄入速效葡萄糖片时,监测绑在患者身上的宽带天线的谐振频率。已经注意到,天线谐振频率随着葡萄糖水平的增加而增加。已建立了人体模型来复制体外测量结果,并且已经证明了共振频率的变化。正在进行的工作是开发一种将天线响应与葡萄糖水平相关联的分析模型。

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